Uniform 3D flowerlike architectures of β-In 2 S 3 assembled with nanoflakes were synthesized in ultrahigh yield via a hydrothermal method between indium chloride (InCl 3 ·4H 2 O) and l -cysteine. After annealing at 400 °C, high-crystalline β-In 2 S 3 was prepared and inherited the morphology of In 2 S 3 before annealing. The combination of In 3+ and l -cysteine in the reaction solution produced the complex, which served as both the indium source and the sulfur source. It was found that the pH of the mixed solution, l -cysteine, and the molar ratio of the reactants played important roles in controlling the final structures. The possible growth mechanism for the formation of 3D flowerlike architectures was preliminarily investigated on the basis of experimental results. The porous In 2 S 3 possessed a specific surface area of 78 m 2 /g and a bimodal distribution of pore sizes corresponding to the size of pores resulting from the self-assembled structures with flakes. The optical properties of In 2 S 3 were also investigated by ultraviolet and visible (UV−vis) spectroscopy, which indicated that In 2 S 3 was a mid band gap semiconductor.
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Chen et al. (2008) studied this question.
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